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Techno-economic analysis of wind power generation for selected locations in Jordan. (2017). Khraiwish, Ali S.
In: Renewable Energy.
RePEc:eee:renene:v:101:y:2017:i:c:p:1369-1378.

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  1. Intelligent Optimized Wind Turbine Cost Analysis for Different Wind Sites in Jordan. (2022). Al-Mhairat, Bashar ; Al-Quraan, Ayman.
    In: Sustainability.
    RePEc:gam:jsusta:v:14:y:2022:i:5:p:3075-:d:765395.

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  2. A Novel 10 kW Vertical Axis Wind Tree Design: Economic Feasibility Assessment. (2021). van Dat, Nguyen ; Hai, Nguyen Thi ; Luengchavanon, Montri ; Niem, Le Duc ; Techato, Kuaanan ; Ngoc, Duong Minh.
    In: Sustainability.
    RePEc:gam:jsusta:v:13:y:2021:i:22:p:12720-:d:681177.

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  3. Developing a holistic simulation approach for parametric techno-economic analysis of wind energy. (2021). Atasoy, Vehbi Emrah ; Ekici, Selcuk ; Suzer, Ahmet Esat.
    In: Energy Policy.
    RePEc:eee:enepol:v:149:y:2021:i:c:s0301421520308168.

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  4. Analysis of United Kingdom offshore wind farm performance using public data: Improving the evidence base for policymaking. (2020). Strachan, Peter A ; Aldersey-Williams, John ; Broadbent, Ian D.
    In: Utilities Policy.
    RePEc:eee:juipol:v:62:y:2020:i:c:s0957178719303388.

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  5. Economics of household wind turbine grid-tied systems for five wind resource levels and alternative grid pricing rates. (2017). Epplin, Francis ; Frazier, Scott R ; Ghaith, Ahmad F.
    In: Renewable Energy.
    RePEc:eee:renene:v:109:y:2017:i:c:p:155-167.

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References

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Cocites

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  1. A New Approach to Estimate the Parameters of the Joint Distribution of the Wind Speed and the Wind Direction, Modelled with the Angular–Linear Model. (2025). Merino, Alejandro ; Martnez-Gutirrez, Samuel ; Sarabia, Daniel ; Ruiz-Gonzalez, Ruben.
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  2. Electrical Generators for Large Wind Turbine: Trends and Challenges. (2022). Amara, Yacine ; Barakat, Georges ; Bensalah, Amina.
    In: Energies.
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  3. Engineering Possibility Studies of a Novel Cylinder-Type FOWT Using Torus Structure with Annular Flow. (2022). Liu, Xiaolei ; Murai, Motohiko.
    In: Energies.
    RePEc:gam:jeners:v:15:y:2022:i:13:p:4919-:d:856233.

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  4. The wind energy potential in Kudat Malaysia by considering the levelized cost of energy for combined wind turbine capacities. (2021). Ibrahim, M Z ; Jusoh, MA ; Yong, KH ; Ridzuan, AR ; Albani, A ; Yusop, ZM.
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  5. Critical review of renewable generation datasets and their implications for European power system models. (2021). el Sayed, Omar ; Bilousova, Mariia ; Jurasz, Jakub ; Stoecker, Horst ; Schyska, Bruno U ; Kies, Alexander.
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  6. Developing a holistic simulation approach for parametric techno-economic analysis of wind energy. (2021). Atasoy, Vehbi Emrah ; Ekici, Selcuk ; Suzer, Ahmet Esat.
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  7. Capacity factor estimation of variable-speed wind turbines considering the coupled influence of the QN-curve and the air density. (2019). Yang, Xuebing ; Tang, Weiyi ; Zheng, Songyue ; Su, Mei ; Song, Dongran ; Joo, Young Hoon.
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  8. Optimal windy sites in Algeria: Potential and perspectives. (2018). Guerri, O ; Haddouche, Kheder S ; Nedjari, Daaou H ; Balehouane, A.
    In: Energy.
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  9. Techno-economic analysis of wind power generation for selected locations in Jordan. (2017). Khraiwish, Ali S.
    In: Renewable Energy.
    RePEc:eee:renene:v:101:y:2017:i:c:p:1369-1378.

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  10. Curtailment in a Highly Renewable Power System and Its Effect on Capacity Factors. (2016). von Bremen, Lueder ; Schyska, Bruno U ; Kies, Alexander.
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  11. Analysis of design parameters of large-sized wind turbines by non-dimensional model. (2015). Queiroz, Oyama Douglas ; Dos, Maurilio Jose ; Rohatgi, Janardan ; Ramos, Armando Lucio ; Araujo, Alex Mauricio.
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  12. Evaluating wind power density models and their statistical properties. (2015). Masseran, Nurulkamal.
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  16. An assessement of global energy resource economic potentials. (2012). Mercure, Jean-Francois ; Salas, P..
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  17. GIS-based approach for the evaluation of wind energy potential: A case study for the Kujawsko-Pomorskie Voivodeship. (2011). Vogt, Joachim ; Sliz-Szkliniarz, Beata .
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